The effect of stem material and surface treatment on the torsional stability at the metal-cement interface of upper limb joint replacement systems

Author:

Hosein Yara K.1,King Graham J. W.123,Dunning Cynthia E.1234

Affiliation:

1. Biomedical Engineering Graduate Program; Western University; London Ontario Canada N6A 5B9

2. Department of Surgery; Western University; London Ontario Canada N6A 5B9

3. Department of Medical Biophysics; Western University; London Ontario Canada N6A 5B9

4. Department of Materials & Mechanical Engineering; Western University; London Ontario Canada N6A 5B9

Funder

Natural Sciences and Engineering Research Council of Canada

The Ontario Ministry of Research and Innovation Early Researcher Award (ERA; Canadian Foundation for Innovation (CFI)

Publisher

Wiley

Subject

Biomedical Engineering,Biomaterials

Reference26 articles.

1. Australian Orthopaedic Association National joint registry, hip and knee arthroplasty annual report 2012 https://aoanjrr.dmac.adelaide.edu.au/annual-reports-2012

2. New Zealand Orthopaedic Association The New Zealand Joint Registry 2012 http://www.cdhb.govt.nz/njr/reports/A2D65CA3.pdf

3. Philosophies of stem designs in cemented total hip replacement;Verdonschot;Orthopedics,2005

4. Is staircase walking a risk for the fixation of hip implants?;Bergmann;J Biomech,1995

5. Fatigue model to characterize cement-metal interface in dynamic shear;Chen;Clin Orthop Relat Res,1998

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